Team:Yale/Interlab
From 2014.igem.org
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- | < | + | <div style="margin-top:50px"> </div> |
- | < | + | <div class="callout"> |
- | + | <h1 style="margin-top:22px; font-size:44px;">Interlab</h1> | |
</td> | </td> | ||
</tr> | </tr> | ||
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<li>What is the model and manufacturer? How is it configured for your measurements? (e.g., light filters, illumination, amplification) <br></strong> | <li>What is the model and manufacturer? How is it configured for your measurements? (e.g., light filters, illumination, amplification) <br></strong> | ||
- | A Synergy H1 Plate Reader (BioTek, Winooski, VT) was used for all optical measurements. The instrument uses a Xenon flash lamp as a light source. Fluorescence measurements were taken at single wavelengths ( λex = 485 ± 4 nm and λem = 528 ± 4 nm). A bottom fluorescence measurement was taken, which is configured with double grating monochromators. The reading speed for fluorescence and absorbance measurements for a 96-well plate is 11 seconds. Two photomultiplier tubes are used for detection: one for the monochromator system and another for the filter system. | + | A Synergy H1 Plate Reader (BioTek, Winooski, VT) was used for all optical measurements. The instrument uses a Xenon flash lamp as a light source. Fluorescence measurements were taken at single wavelengths ( λex = 485 ± 4 nm and λem = 528 ± 4 nm). A bottom fluorescence measurement was taken, which is configured with double grating monochromators. The reading speed for fluorescence and absorbance measurements for a 96-well plate is 11 seconds. Two photomultiplier tubes are used for detection: one for the monochromator system and another for the filter system. <br><br> </ol> |
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We are only considering the cost of the non-renewable materials, which were consumed during our measurements. Below is a chart of the resources used: <br> | We are only considering the cost of the non-renewable materials, which were consumed during our measurements. Below is a chart of the resources used: <br> | ||
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+ | <tr class="tableizer-firstrow"><th>Reagent/Material</th><th>Cost</th></tr> | ||
+ | <tr><td>Gibson Assembly mix</td><td>$31.40 </td></tr> | ||
+ | <tr><td>LB and LB Plate</td><td>$5.00 </td></tr> | ||
+ | <tr><td>96 well plate</td><td>$2.00 </td></tr> | ||
+ | <tr><td>Total</td><td>$38.40 </td></tr> | ||
+ | </table> | ||
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<strong> | <strong> | ||
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The DH5α strain used was not a robust strain, and its growing time greatly impeded construct creation and measurement. <br> </ol> | The DH5α strain used was not a robust strain, and its growing time greatly impeded construct creation and measurement. <br> </ol> | ||
- | + | <br> | |
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Section III: Measured Quantities</u><br> | Section III: Measured Quantities</u><br> | ||
For each type of quantity measured (e.g., fluorescence, optical density), report on the following: <br> | For each type of quantity measured (e.g., fluorescence, optical density), report on the following: <br> | ||
- | <ol type="1"> <li> Units: What are the units of the measurement? | + | <ol type="1"> <li> Units: |
+ | <ol type="a"><li>What are the units of the measurement?<br></strong> | ||
Fluorescence was measured in relative fluorescence units (RFU). <br> | Fluorescence was measured in relative fluorescence units (RFU). <br> | ||
Optical Density was measured in absorbance units (AU). <br> <strong> | Optical Density was measured in absorbance units (AU). <br> <strong> | ||
- | + | ||
+ | <li>What is the equivalent unit expressed as a combination of the seven SI base units? <br>(http://en.wikipedia.org/wiki/SI_base_unit) <br></strong> | ||
Absorbance in AU is a ratio, and thus has no SI units. <br> | Absorbance in AU is a ratio, and thus has no SI units. <br> | ||
- | RFU is an arbitrary fluorescence unit and cannot be compared. <br> <strong> | + | RFU is an arbitrary fluorescence unit and cannot be compared. <br></ol> <strong> |
<li> Precision: <br> | <li> Precision: <br> | ||
<ol type="a"><li>What is the range of possible measured values for this quantity, using your instrument as configured for these measurements? (e.g., a meter stick measures in the range of 0 to 1 meter) <br></strong> | <ol type="a"><li>What is the range of possible measured values for this quantity, using your instrument as configured for these measurements? (e.g., a meter stick measures in the range of 0 to 1 meter) <br></strong> | ||
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<strong><u> | <strong><u> | ||
- | Section IV: Measurements</u><br> | + | Section IV: Measurements</u><br></strong> |
<ol type="1"> <li>1. For each sample, report: <br> | <ol type="1"> <li>1. For each sample, report: <br> | ||
- | the identity of the sample<br> | + | <ol type="a"> <li>the identity of the sample<br> |
- | each quantity directly measured<br> | + | <li>each quantity directly measured<br> |
- | each quantity derived from measurements (e.g., fluorescence/OD) <br></ | + | <li>each quantity derived from measurements (e.g., fluorescence/OD) <br> </ol></ol> |
+ | <br><br> | ||
+ | |||
+ | <strong>Table 1: Optical Density Measurements (AU)</strong> | ||
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+ | <tr class="tableizer-firstrow"><th>Device</th><th>Dilution 1</th><th>Dilution 2</th><th>Dilution 3</th></tr> | ||
+ | <tr><td>BBa120260</td><td>0.668</td><td>0.11</td><td>0.045</td></tr> | ||
+ | <tr><td>Bba_J23101 + Bba_E0240</td><td>0.727</td><td>0.112</td><td>0.046</td></tr> | ||
+ | <tr><td>Bba_J23114 + Bba_E0240</td><td>0.783</td><td>0.139</td><td>0.047</td></tr> | ||
+ | </table> | ||
+ | <br><br> | ||
+ | <strong>Table 2: Fluorescence Measurements (RFU)</strong> | ||
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+ | <tr class="tableizer-firstrow"><th>Device</th><th>Dilution 1</th><th>Dilution 2</th><th>Dilution 3</th></tr> | ||
+ | <tr><td>BBa120260</td><td>71377</td><td>6666</td><td>186</td></tr> | ||
+ | <tr><td>Bba_J23101 + Bba_E0240</td><td>81378</td><td>8055</td><td>166</td></tr> | ||
+ | <tr><td>Bba_J23114 + Bba_E0240</td><td>93536</td><td>11521</td><td>173</td></tr> | ||
+ | </table> | ||
+ | |||
+ | <br><br> | ||
+ | <strong>Table 3: Fluorescence Normalized by Optical Density (AFU/OD)</strong> | ||
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+ | <tr class="tableizer-firstrow"><th>Device</th><th>Dilution 1</th><th>Dilution 2</th><th>Dilution 3</th></tr> | ||
+ | <tr><td>BBa120260</td><td>106852</td><td>60600</td><td>4133</td></tr> | ||
+ | <tr><td>Bba_J23101 + Bba_E0240</td><td>111937</td><td>71920</td><td>3609</td></tr> | ||
+ | <tr><td>Bba_J23114 + Bba_E0240</td><td>119458</td><td>82885</td><td>3681</td></tr> | ||
+ | </table> | ||
+ | <br><br> | ||
+ | <strong>Graph 1: Fluorescence Normalized by Optical Density (AFU/OD)</strong> <br> | ||
+ | <img src="https://static.igem.org/mediawiki/2014/thumb/e/ea/Data_interlab_yale.png/600px-Data_interlab_yale.png" height=450 width=auto> | ||
</div> | </div> |
Latest revision as of 03:12, 18 October 2014
Interlab |
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Section I: Provenance and Release
Section III: Measured Quantities For each type of quantity measured (e.g., fluorescence, optical density), report on the following:
Optical Density was measured in absorbance units (AU). (http://en.wikipedia.org/wiki/SI_base_unit) RFU is an arbitrary fluorescence unit and cannot be compared.
Section IV: Measurements
Table 1: Optical Density Measurements (AU)
Table 2: Fluorescence Measurements (RFU)
Table 3: Fluorescence Normalized by Optical Density (AFU/OD)
Graph 1: Fluorescence Normalized by Optical Density (AFU/OD) |